Mori Seiichiro, Ozaki Saori, Yasugi Toshiharu, Yoshikawa Hiroyuki, Taketani Yuji, Kanda Tadahito
Division of Molecular Genetics, National Institute of Infectious Diseases, 1-23-1 Toyama, Shinjuku-ku, Tokyo, 162-8640, Japan.
Mol Cell Biochem. 2006 Aug;288(1-2):47-57. doi: 10.1007/s11010-006-9117-7. Epub 2006 Apr 1.
Production of human papillomavirus type 16 major capsid protein L1 in undifferentiated cells is negatively regulated by several yet unidentified cis-acting inhibitory RNA elements, among which a major element is located within the first 514 nucleotides of the L1-mRNA. By Northern blotting we examined effect of the major element on the steady-state level of mRNA transiently transcribed in 293T cells from the firefly luciferase (Fluc) gene combined with the L1 DNA fragment encoding the major element. As reported previously, the element down-regulated steady-state level of the mRNA. The most efficient down-regulation was achieved by insertion of the element near the 5' end of mRNA, resulting in an undetectable level of the mRNA. The longer the distance from the 5' end of the mRNA to the element, the weaker the down-regulation. The half-life of the mRNA having the element was similar to that of normal Fluc-mRNA. When the element near the 5' end was removed by splicing, the steady-state level of the resultant mRNA was raised to a readily detectable level. The steady-state level of RNA synthesized by RNA polymerase-I was not influenced by the presence of the element. Taken together, it is suggested that DNA region encoding the major inhibitory element does not disturb transcription and that the pre-mRNA is degraded by an RNA element-mediated mechanism after the splicing step in the course of mRNA maturation.
人乳头瘤病毒16型主要衣壳蛋白L1在未分化细胞中的产生受到几个尚未确定的顺式作用抑制性RNA元件的负调控,其中一个主要元件位于L1 - mRNA的前514个核苷酸内。通过Northern印迹法,我们检测了主要元件对萤火虫荧光素酶(Fluc)基因与编码主要元件的L1 DNA片段在293T细胞中瞬时转录的mRNA稳态水平的影响。如先前报道,该元件下调了mRNA的稳态水平。通过在mRNA的5'端附近插入该元件可实现最有效的下调,导致mRNA水平检测不到。从mRNA的5'端到该元件的距离越长,下调作用越弱。含有该元件的mRNA的半衰期与正常Fluc - mRNA的半衰期相似。当通过剪接去除5'端附近的元件时,所得mRNA的稳态水平升高到易于检测的水平。RNA聚合酶I合成的RNA的稳态水平不受该元件存在的影响。综上所述,提示编码主要抑制元件的DNA区域不干扰转录,并且前体mRNA在mRNA成熟过程中的剪接步骤后通过RNA元件介导的机制降解。